Transfer systems for rank two elementary Abelian groups: characteristic functions and matchstick games
Abstract
We prove that Hill's characteristic function for transfer systems on a lattice surjects onto interior operators for . Moreover, the fibers of have unique maxima which are exactly the saturated transfer systems. In order to apply this theorem in examples relevant to equivariant homotopy theory, we develop the theory of saturated transfer systems on modular lattices, ultimately producing a ``matchstick game'' that puts saturated transfer systems in bijection with certain structured subsets of covering relations. After an interlude developing a recursion for transfer systems on certain combinations of bounded posets, we apply these results to determine the full lattice of transfer systems for rank two elementary Abelian groups.
Keywords
Cite
@article{arxiv.2310.13835,
title = {Transfer systems for rank two elementary Abelian groups: characteristic functions and matchstick games},
author = {Linus Bao and Christy Hazel and Tia Karkos and Alice Kessler and Austin Nicolas and Kyle Ormsby and Jeremie Park and Cait Schleff and Scotty Tilton},
journal= {arXiv preprint arXiv:2310.13835},
year = {2025}
}
Comments
25 pages, comments welcome!